Suppr超能文献

原口动物GATA因子的进化:分子系统发育、共线性和内含子/外显子结构揭示直系同源关系。

The evolution of protostome GATA factors: molecular phylogenetics, synteny, and intron/exon structure reveal orthologous relationships.

作者信息

Gillis William Q, Bowerman Bruce A, Schneider Stephan Q

机构信息

Institute of Molecular Biology, University of Oregon, 1229 University of Oregon, Eugene, OR 97403, USA.

出版信息

BMC Evol Biol. 2008 Apr 15;8:112. doi: 10.1186/1471-2148-8-112.

Abstract

BACKGROUND

Invertebrate and vertebrate GATA transcription factors play important roles in ectoderm and mesendoderm development, as well as in cardiovascular and blood cell fate specification. However, the assignment of evolutionarily conserved roles to GATA homologs requires a detailed framework of orthologous relationships. Although two distinct classes, GATA123 and GATA456, have been unambiguously recognized among deuterostome GATA genes, it has been difficult to resolve exact orthologous relationships among protostome homologs. Protostome GATA genes are often present in multiple copies within any one genome, and rapidly evolving gene sequences have obscured orthology among arthropod and nematode GATA homologs. In addition, a lack of taxonomic sampling has prevented a stepwise reconstruction of protostome GATA gene family evolution.

RESULTS

We have identified the complete GATA complement (53 genes) from a diverse sampling of protostome genomes, including six arthropods, three lophotrochozoans, and two nematodes. Reciprocal best hit BLAST analysis suggested orthology of these GATA genes to either the ancestral bilaterian GATA123 or the GATA456 class. Using molecular phylogenetic analyses of gene sequences, together with conserved synteny and comparisons of intron/exon structure, we inferred the evolutionary relationships among these 53 protostome GATA homologs. In particular, we resolved the orthology and evolutionary birth order of all arthropod GATA homologs including the highly divergent Drosophila GATA genes.

CONCLUSION

Our combined analyses confirm that all protostome GATA transcription factor genes are members of either the GATA123 or GATA456 class, and indicate that there have been multiple protostome-specific duplications of GATA456 homologs. Three GATA456 genes exhibit linkage in multiple protostome species, suggesting that this gene cluster arose by tandem duplications from an ancestral GATA456 gene. Within arthropods this GATA456 cluster appears orthologous and widely conserved. Furthermore, the intron/exon structures of the arthropod GATA456 orthologs suggest a distinct order of gene duplication events. At present, however, the evolutionary relationship to similarly linked GATA456 paralogs in lophotrochozoans remains unclear. Our study shows how sampling of additional genomic data, especially from less derived and interspersed protostome taxa, can be used to resolve the orthologous relationships within more divergent gene families.

摘要

背景

无脊椎动物和脊椎动物的GATA转录因子在胚层和中内胚层发育以及心血管和血细胞命运特化中发挥重要作用。然而,要确定GATA同源物在进化上保守的作用,需要一个详细的直系同源关系框架。虽然在后口动物GATA基因中已明确识别出两个不同的类别,即GATA123和GATA456,但很难解析原口动物同源物之间的确切直系同源关系。原口动物GATA基因在任何一个基因组中通常以多个拷贝存在,快速进化的基因序列模糊了节肢动物和线虫GATA同源物之间的直系同源性。此外,缺乏分类采样阻碍了原口动物GATA基因家族进化的逐步重建。

结果

我们从原口动物基因组的多样化采样中鉴定出了完整的GATA基因集(53个基因),包括六种节肢动物、三种冠轮动物和两种线虫。相互最佳比对的BLAST分析表明,这些GATA基因与祖先两侧对称动物的GATA123或GATA456类别具有直系同源关系。通过对基因序列进行分子系统发育分析,结合保守的共线性和内含子/外显子结构比较,我们推断出这53个原口动物GATA同源物之间的进化关系。特别是,我们解析了所有节肢动物GATA同源物的直系同源性和进化起源顺序,包括高度分化的果蝇GATA基因。

结论

我们的综合分析证实,所有原口动物GATA转录因子基因都是GATA123或GATA456类别的成员,并表明GATA456同源物存在多次原口动物特有的重复。三个GATA456基因在多个原口动物物种中表现出连锁关系,表明这个基因簇是由一个祖先GATA456基因串联重复产生的。在节肢动物中,这个GATA456基因簇似乎是直系同源且广泛保守的。此外,节肢动物GATA456直系同源物的内含子/外显子结构表明了基因重复事件的独特顺序。然而,目前冠轮动物中与类似连锁的GATA456旁系同源物之间的进化关系仍不清楚。我们的研究表明,如何通过采样额外的基因组数据,特别是来自较少分化和散布的原口动物类群的数据,来解析更分化基因家族中的直系同源关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51e5/2383905/0e3d7a2fb7fb/1471-2148-8-112-1.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验